Anomalies, a mod 2 index, and dynamics of 2d adjoint QCD
Abstract
We show that d adjoint QCD, an gauge theory with one massless adjoint Majorana fermion, has a variety of mixed 't Hooft anomalies. The anomalies are derived using a recent mod index theorem and its generalization that incorporates 't Hooft flux. Anomaly matching and dynamical considerations are used to determine the ground-state structure of the theory. The anomalies, which are present for most values of , are matched by spontaneous chiral symmetry breaking. We find that massless d adjoint QCD confines for , except for test charges of -ality , which are deconfined. In other words, center symmetry is unbroken for odd and spontaneously broken to for even . All of these results are confirmed by explicit calculations on small . We also show that this non-supersymmetric theory exhibits exact Bose-Fermi degeneracies for all states, including the vacua, when is even. Furthermore, for most values of , d massive adjoint QCD describes a non-trivial symmetry-protected topological (SPT) phase of matter, including certain cases where the number of interacting Majorana fermions is a multiple of . As a result, it fits into the classification of d SPT phases of interacting Majorana fermions in an interesting way.
Cite
@article{arxiv.1908.09858,
title = {Anomalies, a mod 2 index, and dynamics of 2d adjoint QCD},
author = {Aleksey Cherman and Theodore Jacobson and Yuya Tanizaki and Mithat Ünsal},
journal= {arXiv preprint arXiv:1908.09858},
year = {2020}
}
Comments
Various minor improvements to exposition and clarifications on relations to previous literature